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Summary Anatomy Item Literature (10513) Expression Attributions Wiki
XB-ANAT-661

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Isolation and characterization of the nuclear matrix from the male Xenopus laevis following estrogen administration: kinetics of [3H] uridine incorporation., Snead HW., J Supramol Struct. January 1, 1979; 12 (4): 471-9.


Effects of octylguanidine on the electrical and mechanical events of xenopus heart., Re GG., Boll Soc Ital Biol Sper. January 15, 1979; 55 (1): 73-8.


Effects of octylguanidine on the electrical and mechanical events of Xenopus heart., Re GG., Boll Soc Ital Biol Sper. January 15, 1979; 55 (2): 73-8.


Production and fate of erythroid cells in anaemic Xenopus laevis., Chegini N., J Cell Sci. February 1, 1979; 35 403-15.


Functionally impaired tRNA from ethionine treated rats as detected in injected Xenopus oocytes., Ginzburg I., Nucleic Acids Res. February 1, 1979; 6 (2): 657-72.


Ultrastructural development of Rohon-Beard neurons: loss of intramitochondrial granules parallels loss of calcium action potentials., Lamborghini JE., J Comp Neurol. February 15, 1979; 183 (4): 741-52.


Effects of octylguanidine on the electrical activity of Xenopus heart., Re GG., Experientia. February 15, 1979; 35 (2): 235-6.


Thyroid hormone induces competence for oestrogen-dependent vitellogenin synthesis in developing Xenopus laevis liver., Huber S., Nature. March 1, 1979; 278 (5699): 65-7.


Vitellogenin in Xenopus laevis is encoded in a small family of genes., Wahli W., Cell. March 1, 1979; 16 (3): 535-49.


Tissue distribution of immunoreactive somatostatin in the South African clawed toad (Xenopus laevis)., Shapiro B., J Endocrinol. March 1, 1979; 80 (3): 407-8.


Surface anatomy of branchial food traps of tadpoles: A comparative study., Wassersug RJ., J Morphol. March 1, 1979; 159 (3): 393-425.


The terminal web. A reevaluation of its structure and function., Hull BE., J Cell Biol. April 1, 1979; 81 (1): 67-82.


Anomalous ipsilateral optic fibre projection in Xenopus induced by larval tectal ablation., Straznicky C., J Embryol Exp Morphol. April 1, 1979; 50 111-22.


Electrophoresis and diffusion in the plane of the cell membrane., Poo M., Biophys J. April 1, 1979; 26 (1): 1-21.


Adrenoreceptors, cyclic nucleotides, and the regulation of spleen cell antigen binding in urodele and anuran amphibians., Hodgson RM., Eur J Immunol. April 1, 1979; 9 (4): 289-93.


Synthesis of albumin and malic enzyme in wheat-germ lysates and Xenopus laevis oocytes programmed with chicken-liver messenger RNA., Goodridge A., Eur J Biochem. May 2, 1979; 96 (1): 1-8.


Parenchymal cells purified from Xenopus liver and maintained in primary culture synthesize vitellogenin in response to estradiol-17 beta and serum albumin in response to dexamethasone., Wangh LJ., Dev Biol. June 1, 1979; 70 (2): 479-99.


Estrogen causes a rapid, large and prolonged rise in the level of nuclear estrogen receptor in Xenopus laevis liver., Westley B., Biochem Biophys Res Commun. June 13, 1979; 88 (3): 1167-72.


Toxicity of selenium to developing Xenopus laevis embryos., Browne CL., J Toxicol Environ Health. July 1, 1979; 5 (4): 699-709.


[The topographical localization of spinal motoneurons of the rat and its numerical alternation in regard to development (author's transl)]., Tada K., Nihon Seikeigeka Gakkai Zasshi. July 1, 1979; 53 (7): 807-16.


Detection of substance P in the central nervous system by a monoclonal antibody., Cuello AC., Proc Natl Acad Sci U S A. July 1, 1979; 76 (7): 3532-6.


A study of the organisation of the ribosomal ribonucleic acid gene cluster of Neurospora crassa by means of restriction endonuclease analysis and cloning in bacteriophage lambda., Cox RA., Mol Gen Genet. July 2, 1979; 174 (1): 17-24.


The role of the carbohydrate in the stabilization, processing, and packaging of the glycosylated adrenocorticotropin-endorphin common precursor in toad pituitaries., Loh YP., Endocrinology. August 1, 1979; 105 (2): 474-87.


Aerobic and anaerobic contributions to sustained activity in Xenopus laevis., Hutchison VH., Respir Physiol. September 1, 1979; 38 (1): 93-103.


Post-translational modification of rat immunoglobulins synthesized in the Xenopus oocyte translation system., Deacon NJ., Immunology. September 1, 1979; 38 (1): 137-44.


The time scale of tooth development and replacement in Xenopus laevis (Daudin)., Shaw JP., J Anat. September 1, 1979; 129 (Pt 2): 323-42.


The effect of adult thymectomy upon helper function in Xenopus laevis, the South African clawed toad., Gruenewald DA., Immunology. September 1, 1979; 38 (1): 191-4.


Translation and stability of rat liver messenger RNA for alpha 2 mu-globulin in Xenopus oocyte. The role of terminal poly(A)., Deshpande AK., J Biol Chem. September 25, 1979; 254 (18): 8937-42.


The nucleotide sequence of the initiation and termination sites for ribosomal RNA transcription in X. laevis., Sollner-Webb B., Cell. October 1, 1979; 18 (2): 485-99.


Metabolic state dependent preservation of cells by fixatives for electron microscopy., Bereiter-Hahn J., Microsc Acta. November 1, 1979; 82 (3): 239-50.


Immunohistochemical localization of a gastrin-like peptide in the brain of an amphibian, Xenopus laevis Daud., Doerr-Schott J., Cell Tissue Res. November 1, 1979; 203 (1): 65-78.


Priming increases the amount of interferon mRNA in poly(rI).poly(rC)-treated L cells., Fujita T., J Gen Virol. November 1, 1979; 45 (2): 301-8.


Xenopus liver: ontogeny of estrogen responsiveness., Skipper JK., Science. November 9, 1979; 206 (4419): 693-5.


A nuclear precursor to human gamma-globin messenger RNA., Courtney M., Nucleic Acids Res. November 10, 1979; 7 (5): 1121-30.


Intranuclear injection of anti-actin antibodies into Xenopus oocytes blocks chromosome condensation., Rungger D., Nature. November 15, 1979; 282 (5736): 320-1.


Structure and formation of ankylosis in Xenopus laevis., Katow H., J Morphol. December 1, 1979; 162 (3): 327-42.


Transcription of cloned tRNA genes and the nuclear partitioning of a tRNA precursor., Melton DA., Cell. December 1, 1979; 18 (4): 1165-72.


Elimination and metabolism of dimethylnitrosamine (DMN) by Xenopus laevis and other amphibians., Rao RR., Experientia. December 15, 1979; 35 (12): 1661-3.


[Vestibular apparatus study of the toad, Xenopus laevis, and rats under prolonged weightlessness]., Vinnikov IaA., Zh Evol Biokhim Fiziol. January 1, 1980; 16 (6): 574-9.


Effects of alpha-amanitin and actinomycin D on Xenopus laevis (DAUD.) heart in culture during cardiac differentiation (anuran amphibia)., Stocker S., Cell Mol Biol Incl Cyto Enzymol. January 1, 1980; 26 (3): 303-17.


[Tumour induction by methylnitrosourea in clawed frogs (Xenopus laevis) (author's transl)]., Jänisch W., Arch Geschwulstforsch. January 1, 1980; 50 (4): 289-98.


Effects of the carcinogens N-methyl-N-nitrosourea and N-dimethylnitrosamine on spleen cell antigen binding in Xenopus laevis., Hodgson RM., Dev Comp Immunol. January 1, 1980; 4 (3): 473-82.


The effect of divalent and trivalent cations on the sodium permeability of myelinated nerve fibres of Xenopus laevis., Brismar T., Acta Physiol Scand. January 1, 1980; 108 (1): 23-9.


Identification, organization and processing intermediates of the putative precursors of Xenopus vitellogenin messenger RNA., Ryffel GU., Cell. January 1, 1980; 19 (1): 53-61.


An autoradiographic study of the retinal projection in Xenopus laevis with comparisons to Rana., Levine RL., J Comp Neurol. January 1, 1980; 189 (1): 1-29.


Rental projections in the adult Xenopus laevis: a study with cobalt filling technique., Tóth P., Acta Morphol Acad Sci Hung. January 1, 1980; 28 (4): 365-74.


Responses of MSH and prolactin cells to 5-hydroxytryptophan (5-HTP) in amphibians and teleosts., Olivereau M., Cell Tissue Res. January 1, 1980; 207 (3): 377-85.


Investigation of the determinants of nuclear pore number., Maul GG., Cytogenet Cell Genet. January 1, 1980; 26 (2-4): 175-90.


Lymphocyte reactivity to "T" and "B" cell mitogens in Xenopus laevis: studies on thymus and spleen., Horton JD., Dev Comp Immunol. January 1, 1980; 4 (1): 75-86.


Distribution patterns of neurotensin-like immunoreactive cells in the gastro-intestinal tract of higher vertebrates., Reinecke M., Cell Tissue Res. January 1, 1980; 205 (3): 383-95.

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